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Out-of-Equilibrium Chiral Magnetic Effect from Chiral Kinetic Theory

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arxiv 1703.08856 v2 pith:LACYMT7Z submitted 2017-03-26 hep-ph hep-th

classification hep-phhep-th
keywords chiralmagneticcollisionseffectbeenchargeequilibriumfield
verification ladder T0 review T1 audit T2 compute T3 formal
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Recently there has been significant interest in the macroscopic manifestation of chiral anomaly in many-body systems of chiral fermions. A notable example is the Chiral Magnetic Effect (CME). Enthusiastic efforts have been made to search for the CME in the quark-gluon plasma created in heavy ion collisions. A crucial challenge is that the extremely strong magnetic field in such collisions may last only for a brief moment and the CME current may have to occur at so early a stage that the quark-gluon matter is still far from thermal equilibrium. This thus requires modeling of the CME in an out-of-equilibrium setting. With the recently developed theoretical tool of chiral kinetic theory, we make a first phenomenological study of the CME-induced charge separation during the pre-thermal stage in heavy ion collisions. The effect is found to be very sensitive to the time dependence of the magnetic field and also influenced by the initial quark momentum spectrum as well as the relaxation time of the system evolution toward thermal equilibrium. Within the present approach, such pre-thermal charge separation is found to be modest.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The Gilbert Damping Factor of Heavy Quark Spin Polarization in the Magnetic Field

    nucl-th 2025-05 reject novelty 6.0 of 10

    The paper derives an expression for the heavy quark Gilbert damping factor from linear response theory and a screened Coulomb potential, finding alpha below 0.1 for charm quarks.

  2. Influence of interactions on the chiral effect in $1D$ Dirac semimetal

    cond-mat.str-el 2026-08 conditional novelty 4.0 of 10

    For the interacting SSH model, QMC data show that the low-frequency response of chiral density to an electric field remains equal to the electrical conductivity, so local Hubbard interactions do not renormalize the 1D...

  3. Spin dynamics and polarization in relativistic systems: recent developments

    nucl-th 2026-05 unverdicted novelty 1.0 of 10

    The review summarizes developments in spin hydrodynamics, polarization from spin-vorticity coupling, pseudo-gauge freedom, and heavy-flavor spin dynamics in relativistic systems.

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